Gábor Tóth
- ORCiD
- https://orcid.org/0000-0002-5654-9823
- OpenAlex ID
- https://openalex.org/A5045658440 (API record)
Associated Concepts [?]
- World Wide Web
- Computer science
- Quantum mechanics
- Plasma
- Physics
- Nuclear physics
- Magnetic field
- Astronomy
- Space Science
- Space (punctuation)
- Philosophy
- Operating system
- Magnetosphere
- Magnetohydrodynamics
- Magnetohydrodynamic drive
- Linguistics
- Geology
- Engineering
- Aerospace engineering
- Space physics
- Preprint
- Geophysics
Authored Works
sorted by decreasing year, and then by display-name
- Uncertainty Quantification and Global Sensitivity Analysis for CME simulations in the SWMF
- Simulating the Interaction of Magnetic Flux Ropes using Magnetohydrodynamics with Adaptively Embedded Particle-In-Cell (MHD-AEPIC) Model
- Reconstructing Remote and In-Situ Observations of CMEs via MHD Modeling
- Modeling the Solar Wind During Different Phases of the Last Solar Cycle
- Modeling Extreme Space Weather Events with MHD-AEPIC
- Investigation of the Effect of Solar Wind Data Simplifications on Ground Magnetic Perturbations Prediction Performance of Geospace Physics-Based Models
- How well do geomagnetic indices predict storm evolution in observations and simulations?
- High Resolution Finite Volume Method for Kinetic Equations with Poisson BracketsHigh Resolution Finite Volume Method for Kinetic Equations with Poisson Brackets
- Global MHD with Embedded Particle-in-Cell (MHD-EPIC) Simulations of Jupiter's Magnetosphere: Initial applications to Jupiter's magnetotail reconnection
- Effect of Photoionization on the BU Global Model of the Heliosphere
- Dynamic evolution of bursty bulk flows and their impact on multi-scale magnetosphere-ionosphere coupling revealed by MHD with Embedded Particle-In-Cell model
- Developing the Next Generation Space Weather Modeling Framework: Year 2
- Connecting White Light Images with In-situ Observations of Solar Wind Quantities for CME Simulations in the SWMF
- Comparison of Lyman Alpha Absorptions in the BU and Moscow Models
- A 3D Global Simulation of the Heliosphere with Hot Electrons
- 3D MHD-EPIC Simulations of Mercury's Dayside Magnetopause Reconnection
- Terrestrial Impacts of Global Geospace Modeling of an Ensemble of Storms
- Simulating the dawn-dusk asymmetry of Mercurys magnetotail reconnection with MHD-AEPIC model
- SOFIE (Solar-wind with Field-lines and Energetic-particles): A data-driven and self-consistent SEP modeling and forecasting tool
- Predicting the Optimal Poynting Flux for Different Solar Activity Conditions for Realtime Solar Wind Prediction
- Predicting the Background Solar Wind for Solar Maximum Conditions with the Alfven Wave Solar atmosphere model (AWSoM)
- Magnetosphere Energy Dynamics in 3D, Comparison to the Virial Theorem and Quantification of Macro Scale Dynamics During a Simulated Storm Event
- Interpretable Machine Learning Methods for forecasting the SYM-H Index
- How will the crustal magnetic field affect the tail reconnection process at Mars?
- Global Sensitivity Analysis for Solar-Wind Simulations in the Space Weather Modelling Framework
- Geomagnetic storm event simulation using a global MHD with Adaptively Embedded Particle-In-Cell (MHD-AEPIC) model
- Formation and evolution of the large-scale magnetic fields in Venus Ionosphere: Results from a 3D global multi-species MHD model
- Effect of different simulation configurations on the prediction performance of the Space Weather Modeling Framework on ground magnetic perturbations
- Developing the Michigan Sun-to-Earth Model with Data Assimilation and Quantified Uncertainty
- Dependence of Mercurys magnetopause reconnection on the upstream conditions: 3D Hall-MHD simulations
- AWSoM MHD simulation of a solar active region with realistic spectral synthesis
- A comparison of heliotail configurations arising from different treatments of non-ideal MHD effects with ENA maps at IBEX energies
- A Turbulent Heliosheath Driven by Rayleigh Taylor Instability
- A Time-Dependent Split Tail Heliosphere
- A Predictive Geoelectric Field Model: Development, Results, and Challenges
- 2D Michigan Solar Wind Propagation Model for the Outer Heliosphere
Linked Co-Authors
- A. A. Pevtsov
- Adam Michael
- Aniket Jivani
- Anna Kelbert
- Austin Brenner
- Brian E. Wood
- C. J. Henney
- C. T. Russell
- Cecilia Norgren
- Changkun Li
- Chuanfei Dong
- Daniel Iong
- E. Adamson
- E. J. Rigler
- Enrico Camporeale
- G. P. Zank
- Gangkai Poh
- Hidetaka Kuniyoshi
- Howard J. Singer
- J. A. Slavin
- J. F. Drake
- J. G. Luhmann
- K. Dialynas
- M. Gkioulidou
- M. Hesse
- M. Opher
- Marc Kornbleuth
- Norah Kaggwa Kwagala
- P. Tenfjord
- Qusai Al Shidi
- Shasha Zou
- Susanne Flø Spinnangr
- T. I. Gombosi
- T. Moretto
- Timothy B Keebler
- Tuija Pulkkinen
- Vladislav Izmodenov
- Xiantong Wang
- Xianzhe Jia
- Xun Huan
- Y. Ma
- Yang Chen
- Zi Han Wang
- И. В. Соколов
Linked Collaborating Institutions
- Aalto University, Finland
- Academy of Athens, Office of Space Research
- Boston University, Massachusetts
- Florida Institute of Technology
- Harvard University, Massachusetts
- Johns Hopkins University, Applied Physics Laboratory
- Massachusetts Institute of Technology
- NASA Ames Research Center
- National Oceanic and Atmospheric Administration, Boulder
- National Solar Observatory, Sunspot New Mexico
- Princeton University, New Jersey
- RAS, Institute for Problems in Mechanics, Moscow
- RAS, Space Research Institute, Moscow
- Southwest Research Institute, Texas
- U.S. Department of the Navy, Naval Research Laboratory, Washington DC
- U.S. Geological Survey
- UMass Lowell
- University of Arizona
- University of Bergen, Norway
- University of Bern, Switzerland
- University of California, Berkeley
- University of California, Los Angeles
- University of Colorado, Boulder
- University of Maryland, College Park
- University of Michigan
- University of Michigan, Department of Atmospheric Oceanic and Space Sciences
- University of Science and Technology of China, Hefei
- University of Science and Technology, Beijing
- University of Tokyo, Japan
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